A jewelry piece with a colorful flowing light and dazzling effect and its manufacturing process
By designing and processing evenly distributed reflective arc notches on the surface of precious metal jewelry, the problem of single shape effect of existing precious metal jewelry is solved, and the colorful streaming effect with angle and position is achieved to meet market demand.
Patent Information
- Application Number
- CN202210582713.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-05-26
- Publication Date
- 2025-07-22
- Estimated Expiration
- 2042-05-26
AI Technical Summary
The existing precious metal jewelry has a single shape and poor reflective effect, which cannot meet market demand.
A number of notches are evenly distributed on the surface of the jewelry body. The inner concave surface of the notches is a reflective arc surface. The depth gradually decreases from the center line to the dividing line between the two sides, and gradually decreases from the edge of the jewelry body to the center point. The notches are designed using drawing software and processed by machine tools.
It realizes that jewelry parts have a colorful streaming light change effect as the angle and position change, and the colorful effect is better and meets market demand.
Smart Images

Figure CN114886209B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to jewelry, and particularly to a jewelry piece with a colorful flowing light and dazzling effect and its manufacturing process. Background Art
[0002] At present, due to the progress of jewelry processing technology, many precious metal jewelry itself can outline shapes with unique effects. However, common processing methods generally involve processing grooves, smooth surfaces or matte surfaces on the surface of precious metals. By flexibly setting grooves, smooth surfaces and matte surfaces, many shaping effects can be presented. However, most of these shaping effects are relatively rigid, and the shaping areas are clearly demarcated. Especially, no matter what position or angle the jewelry is in, its shaping effect is single and unchanged, and the dazzling degree of the reflective effect is not good, which cannot meet the market demand. Summary of the Invention
[0003] The technical problem to be solved by the present invention is to provide a jewelry piece and its manufacturing process that can present a flowing light change effect as the angle and position of the jewelry piece change, and at the same time have a better dazzling effect, in view of the deficiencies of the prior art.
[0004] To solve the above technical problem, the present invention adopts the following technical solutions.
[0005] A jewelry piece with a colorful flowing light and dazzling effect, which includes a jewelry body. A center point is provided on the surface of the jewelry body. A plurality of notch parts are evenly distributed on the surface of the jewelry body. The notch parts communicate between the center point and the edge of the jewelry body. The inner concave surface of the notch part is a reflective arc surface. A demarcation line is formed between two adjacent notch parts. A center line is formed in the notch part, and there are: the depth of the notch part gradually decreases from the center line to both sides of the demarcation line; the depth of the notch part gradually decreases from the edge of the jewelry body to the center point direction.
[0006] Preferably, the included angle between two adjacent demarcation lines ≤ 20°.
[0007] Preferably, 18 notch parts are evenly distributed on the surface of the jewelry body, and the included angle between two adjacent demarcation lines is 20°.
[0008] Preferably, the demarcation line is a straight line, an arc or an S-shaped curve.
[0009] Preferably, the jewelry body is a gold, silver or copper jewelry body.
[0010] Preferably, the jewelry body is a circular, square or special-shaped jewelry body.
[0011] Preferably, the maximum depth of the notch part is 0.03 mm to 0.1 mm.
[0012] Preferably, the maximum depth of the notch is 0.08 mm.
[0013] A manufacturing process for a jewelry piece with a colorful flowing light and dazzling effect, the manufacturing process comprising: Step S1, designing a drawing of the jewelry piece using drawing software, the jewelry piece including a jewelry body, a center point being provided on the surface of the jewelry body, a plurality of notches being evenly distributed on the surface of the jewelry body, the inner concave surface of the notch being a reflective arc surface, the notch communicating between the center point and the edge of the jewelry body, a demarcation line being formed between two adjacent notches, and a center line being formed in the notch; Step S2, setting the depth of the notch to be: the depth of the notch gradually decreases from the center line towards the two demarcation line directions; the depth of the notch gradually decreases from the edge of the jewelry body towards the center point direction; Step S3, processing and forming the notch on the surface of the jewelry piece substrate according to the drawing of the jewelry piece designed in Step S1 to Step S2.
[0014] Preferably, in Step S3, the drawing of the jewelry piece is imported into a preset machine tool processing device, and the machine tool processing device is used to process and form the notch on the surface of the jewelry piece substrate.
[0015] For the jewelry piece with a colorful flowing light and dazzling effect disclosed in the present invention, during the manufacturing process, first, a drawing of the jewelry piece is designed using drawing software, a plurality of evenly distributed notches are designed on the surface of the jewelry body, and the inner concave surface of the notch is a reflective arc surface. Since the depth of the notch gradually decreases from the center line towards the two demarcation line directions, and at the same time the depth of the notch gradually decreases from the edge of the jewelry body towards the center point direction, the light reflection line effect on the surface of the jewelry body is as Figure 3 shown. When people wear the jewelry, as the position and angle of the jewelry body change, the light reflection position also changes adaptively, thereby bringing a continuously changing colorful flowing light and dazzling reflective effect. Based on the above principle, the beneficial effect of the present invention compared with the prior art is that the present invention can present a colorful flowing light change effect as the angle and position of the jewelry piece change, and at the same time the dazzling effect is better, which preferably meets the application needs and market demands. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 is a perspective view of the jewelry piece of the present invention;
[0017] Figure 2 is a top view of the jewelry piece of the present invention;
[0018] Figure 3 is a schematic diagram of the reflective effect of the jewelry piece of the present invention;
[0019] Figure 4This is a partial cross-sectional view of the jewelry piece of the present invention. Detailed Embodiment
[0020] The present invention will be described in more detail below in conjunction with the accompanying drawings and embodiments.
[0021] The present invention discloses a jewelry piece with a colorful flowing light and dazzling effect. As shown in Figures 1 to 4 , it includes a jewelry body 1. A center point 2 is provided on the surface of the jewelry body 1. A plurality of notch parts 3 are evenly distributed on the surface of the jewelry body 1. The notch parts 3 communicate between the center point 2 and the edge of the jewelry body 1. The inner concave surface of the notch part 3 is a reflective arc surface. A dividing line 4 is formed between two adjacent notch parts 3. A center line 5 is formed in the notch part 3, and there are:
[0022] The depth of the notch part 3 gradually decreases from the center line 5 towards the two dividing lines 4 on both sides;
[0023] The depth of the notch part 3 gradually decreases from the edge of the jewelry body 1 towards the center point 2.
[0024] During the manufacturing process of the above structure, first, the drawing software is used to design the drawing of the jewelry piece. A plurality of evenly distributed notch parts 3 are designed on the surface of the jewelry body 1, and the inner concave surface of the notch part 3 is a reflective arc surface. Since the depth of the notch part 3 gradually decreases from the center line 5 towards the two dividing lines 4 on both sides, and at the same time the depth of the notch part 3 gradually decreases from the edge of the jewelry body 1 towards the center point 2, the light reflection line effect on the surface of the jewelry body 1 is as shown in Figure 3 . When people wear the jewelry, as the position and angle of the jewelry body 1 change, the light reflection position also changes accordingly, thus bringing a continuously changing colorful flowing light and dazzling reflective effect. Based on the above principle, the beneficial effect of the present invention compared with the prior art is that the present invention can present a colorful flowing light change effect as the angle and position of the jewelry piece change, and at the same time the dazzling effect is better, which better meets the application needs and market demands.
[0025] As a preferred angle design, in this embodiment, the included angle between two adjacent dividing lines 4 ≤ 20°. Specifically, 18 notch parts 3 are evenly distributed on the surface of the jewelry body 1, and the included angle between two adjacent dividing lines 4 is 20°.
[0026] On this basis, the maximum depth of the notch part 3 is 0.03 mm to 0.1 mm. Preferably, the maximum depth of the notch part 3 is 0.08 mm.
[0027] In this embodiment, the included angle between the two dividing lines 4 is 20°, which is the optimal angle, and the maximum depth of the notch portion 3 is 0.08 mm, which is the best. If the angle or depth is too large or too small, the continuity of the colorful effect will be adversely affected.
[0028] In practical applications, the dividing line 4 is a straight line, an arc or an S-shaped curve.
[0029] The jewelry body 1 in this embodiment can be various precious metals. For example, the jewelry body 1 is a gold, silver or copper jewelry body. Further, the jewelry body 1 is a circular, square or special-shaped jewelry body.
[0030] To better describe the technical solution of the present invention, the present invention also discloses a manufacturing process of a jewelry piece with a colorful and flowing light effect. As shown in combination with Figures 1 to 4 The manufacturing process includes:
[0031] Step S1: Design a drawing of a jewelry piece using drawing software. The jewelry piece includes a jewelry body 1. A center point 2 is provided on the surface of the jewelry body 1. A plurality of notch portions 3 are evenly distributed on the surface of the jewelry body 1. The inner concave surface of the notch portion 3 is a reflective arc surface. The notch portion 3 communicates between the center point 2 and the edge of the jewelry body 1. A dividing line 4 is formed between adjacent two notch portions 3. A center line 5 is formed in the notch portion 3;
[0032] Step S2: Set the depth of the notch portion 3 as follows:
[0033] The depth of the notch portion 3 gradually decreases from the center line 5 to both sides of the dividing line 4;
[0034] The depth of the notch portion 3 gradually decreases from the edge of the jewelry body 1 to the center point 2;
[0035] Step S3: According to the drawing of the jewelry piece designed in Step S1 to Step S2, process the notch portion 3 on the surface of the jewelry piece substrate. In Step S3, import the drawing of the jewelry piece into a preset machine tool processing device, and use the machine tool processing device to process the notch portion 3 on the surface of the jewelry piece substrate.
[0036] The jewelry piece with a colorful and flowing light effect disclosed by the present invention can present a continuously changing colorful and flowing light reflective characteristic based on a plurality of evenly distributed notch portions 3. When people wear the jewelry, as the angle of the jewelry piece changes, a colorful light effect can be brought along. Through actual wearing, it can be known that such jewelry pieces can produce a colorful effect similar to a peacock spreading its tail, and at the same time have a remarkable visual effect, which better meets the market demand and the high-precision wearing requirements of users.
[0037] The above are only the preferred embodiments of the present invention and are not intended to limit the present invention. Any modifications, equivalent substitutions or improvements made within the technical scope of the present invention shall be included within the scope protected by the present invention.
Claims
1. A jewelry piece with a colorful flowing light and dazzling effect, characterized in that, It includes a jewelry body (1), on the surface of the jewelry body (1) there is a center point (2), and on the surface of the jewelry body (1) there are a plurality of notch parts (3) evenly distributed. The notch parts (3) communicate between the center point (2) and the edge of the jewelry body (1). The inner concave surface of the notch part (3) is a reflective arc surface. There is a dividing line (4) formed between two adjacent notch parts (3). There is a center line (5) formed in the notch part (3), and there are: The depth of the notch part (3) gradually decreases from the center line (5) to the dividing lines (4) on both sides; The depth of the notch part (3) gradually decreases from the edge of the jewelry body (1) to the center point (2).
2. The jewelry piece with a colorful flowing light and dazzling effect as described in claim 1, wherein, The included angle between two adjacent dividing lines (4) ≤ 20°.
3. The jewelry piece with a colorful flowing light and dazzling effect as described in claim 2, wherein There are 18 notch parts (3) evenly distributed on the surface of the jewelry body (1), and the included angle between two adjacent dividing lines (4) is 20°.
4. The jewelry piece with a seven-color flowing light and dazzling effect as described in claim 1, wherein The dividing line (4) is a straight line, an arc or an S-shaped curve.
5. The jewelry piece with a colorful flowing light and dazzling effect as described in claim 1, characterized in that, The jewelry body (1) is a gold, silver or copper jewelry body.
6. The jewelry piece with a seven-color flowing light and dazzling effect as described in claim 1, characterized in that The jewelry body (1) is a circular, square or special-shaped jewelry body.
7. The jewelry piece with a colorful flowing light and dazzling effect as described in claim 1, characterized in that, The maximum depth of the notch part (3) is 0.03 mm to 0.1 mm.
8. The jewelry piece with a colorful flowing light and dazzling effect as described in claim 1, characterized in that, The maximum depth of the notch part (3) is 0.08 mm.
9. A manufacturing process for jewelry pieces with a colorful flowing light and dazzling effect, characterized in that, The manufacturing process includes: Step S1, using drawing software to design the drawing of the jewelry piece. The jewelry piece includes a jewelry body (1), on the surface of the jewelry body (1) there is a center point (2), and on the surface of the jewelry body (1) there are a plurality of notch parts (3) evenly distributed. The inner concave surface of the notch part (3) is a reflective arc surface. The notch part (3) communicates between the center point (2) and the edge of the jewelry body (1). There is a dividing line (4) formed between two adjacent notch parts (3). There is a center line (5) formed in the notch part (3); Step S2, set the depth of the notch part (3) to be: The depth of the notch part (3) gradually decreases from the center line (5) to the dividing lines (4) on both sides; The depth of the notch part (3) gradually decreases from the edge of the jewelry body (1) to the center point (2); Step S3, according to the drawing of the jewelry piece designed in Step S1 to Step S2, process the notch part (3) on the surface of the jewelry piece substrate.
10. The manufacturing process of the jewelry piece with a colorful flowing light and dazzling effect as described in claim 9, characterized in that, In Step S3, import the drawing of the jewelry piece into a preset machine tool processing device, and use the machine tool processing device to process the notch part (3) on the surface of the jewelry piece substrate.
Citation Information
Patent Citations
Precious metal jewelry production process with visual effect of dazzling colors
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